图书简介
Wear is one of the main reasons mechanical components and materials become inoperable, rendering enormous costs to society over time. Estimating wear allows engineers to predict the useful life of modern mechanical elements, reduce the costs of inoperability, or obtain optimal designs (i.e. selecting proper materials, shapes, and surface finishing according to mechanical conditions and durability) to reduce the impact of wear.Wear in Advanced Engineering Applications and Materials presents recent computational and practical research studying damage and wear in advanced engineering applications and materials. As such, this book covers numerical formulations based on the finite element method (FEM) — and the extended FEM (XFEM) — as well as theoretical and experimental research to predict the wear response or life-limiting failure of engineering applications.Contributions from leading experts and promising researchers give a detailed overview of different modern techniques and materials that can be considered by researchers and practicing engineers to reduce surface damager and wear in mechanical components and materials.Key Features• Predicting and optimizing the wear performance of tribological systems is of great interest in many mechanical applications, this book is written by leading experts to report on Computational Modelling and experimental studies on wear in practicing engineering applications• A good reference book for engineers and researchers alike• Designs are evaluated with high-accuracy simulations prior to fabrication. Extensive testing is conducted, including for wear volume, wear rate, surface height distribution, and profile measurements throughout the wear process. The effects of boundary conditions and the importance of taking wear sliding directionality into account in the modelling process are discussed
Fretting Fatigue and Wear of Spline Couplings: From Laboratory Testing to Industrial Applications through Computational Modelling (Seán B Leen); Fretting Fatigue Life Assessment by Accounting Wear (R A Cardoso, F C Castro, L Reis, J A Araújo); Numerical Frameworks for the Wear Modeling of Key Engineering Materials (Thiago Doca); Wear in Heavily-Loaded Lubricated Contacts (G E Morales-Espejel); In-silico Analytical Wear Predictions: Application to Joint Prostheses (Francesca Di Puccio, Lorenza Mattei); In-silico Finite Element Wear Predictions (Lorenza Mattei, Curreli Cristina, Francesca Di Puccio); Modeling Wear using the Finite Element Method in Abaqus© (Iyas Khader); Wear Modelling in Fibre-Reinforced Composite Materials (J M Juliá, L Rodríguez-Tembleque, and M H Aliabadi);
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